首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Biocapture of CO2 by Different Microalgal-Based Technologies for Biogas Upgrading and Simultaneous Biogas Slurry Purification under Various Light Intensities and Photoperiods
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Biocapture of CO2 by Different Microalgal-Based Technologies for Biogas Upgrading and Simultaneous Biogas Slurry Purification under Various Light Intensities and Photoperiods

机译:在不同光强度和光周期下通过不同的基于微藻的技术进行沼气升级和沼气浆液同时净化的生物捕集技术

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摘要

Co-cultivation of microalgae and microbes for pollutant removal from sewage is considered as an effective wastewater treatment method. The aim of this study is to screen the optimal photoperiod, light intensity and microalgae co-cultivation method for simultaneously removing nutrients in biogas slurry and capturing CO2 in biogas. The microalgae–fungi pellets are deemed to be a viable option because of their high specific growth rate and nutrient and CO2 removal efficiency under the photoperiod of 14 h light:10 h dark. The order of both the biogas slurry purification and biogas upgrading is ranked the same, that is Chlorella vulgaris–Ganoderma lucidum > Chlorella vulgaris–activated sludge > Chlorella vulgaris under different light intensities. For all cultivation methods, the moderate light intensity of 450 μmol m−2 s−1 is regarded as the best choice. This research revealed that the control of photoperiod and light intensity can promote the biological treatment process of biogas slurry purification and biogas upgrading using microalgal-based technology.
机译:微藻和微生物的共培养以去除污水中的污染物被认为是一种有效的废水处理方法。这项研究的目的是筛选最佳光周期,光强度和微藻共培养方法,以同时去除沼液中的养分并捕获沼气中的二氧化碳。微藻-真菌沉淀物被认为是可行的选择,因为它们在14 h光照:10 h黑暗的光周期下具有较高的比生长速率以及营养和CO2去除效率。沼气泥浆净化和沼气升级的顺序相同,即在不同的光强度下,小球藻–灵芝>小球藻活性污泥>小球藻。对于所有栽培方法,450μmolm −2 s -1 的中等光照强度被认为是最佳选择。这项研究表明,控制光周期和光强度可以促进基于微藻类技术的沼气浆液净化和沼气升级的生物处理过程。

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